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通过L边X射线吸收光谱(XAS)和X射线磁圆二色性(XMCD)量化3d-4s混合对线性配位金属离子的影响。

Quantifying the influence of 3d-4s mixing on linearly coordinated metal-ions by L-edge XAS and XMCD.

作者信息

Huzan Myron S, Burrow Timothy G, Fix Manuel, Breitner Franziska A, Chong Sut Kei, Bencok Peter, Aramini Matteo, Jesche Anton, Baker Michael L

机构信息

Department of Chemistry, The University of Manchester Manchester M13 9PL UK

The University of Manchester at Harwell, Diamond Light Source, Harwell Campus OX11 0DE UK.

出版信息

Chem Sci. 2023 Dec 26;15(7):2433-2442. doi: 10.1039/d3sc06308a. eCollection 2024 Feb 14.

Abstract

The mixing valence d and s orbitals are predicted to strongly influence the electronic structure of linearly coordinated molecules, including transition metals, lanthanides and actinides. In specific cases, novel magnetic properties, such as single-ion magnetic coercivity or long spin decoherence times, ensue. Inspired by how the local coordination symmetry can engender such novel phenomena, in this study, we focus our attention on dopants (Mn, Fe, Co, Ni, Cu) in lithium nitride to accept innovation from molecular magnetism in a high symmetry 6/ solid-state crystal. The linear coordination environment results in strong 3d-4s mixing, proving to be an ideal series to investigate the role of d-s mixing and bonding on electronic structure and magnetism. It is shown that L-edge XAS can be applied to experimentally identify the presence of 3d-4s mixing and the influence this has on the ligand-field splitting. XMCD specifies how spin-orbit coupling is affected. The combined spectroscopies are analysed to determine the effect of 4s mixing with support from calculations. The results provide new insight of relevance to future applications, including quantum information processing and the sustainable replacement of rare earths in magnets.

摘要

预计混合价态的d轨道和s轨道会强烈影响线性配位分子的电子结构,包括过渡金属、镧系元素和锕系元素。在特定情况下,会产生诸如单离子磁矫顽力或长自旋退相干时间等新颖的磁性。受局部配位对称性如何引发此类新颖现象的启发,在本研究中,我们将注意力集中在氮化锂中的掺杂剂(锰、铁、钴、镍、铜)上,以从高对称性固态晶体中的分子磁性中汲取创新。线性配位环境导致强烈的3d - 4s混合,事实证明这是研究d - s混合和键合对电子结构和磁性作用的理想系列。结果表明,L边X射线吸收光谱(XAS)可用于通过实验确定3d - 4s混合的存在及其对配体场分裂的影响。X射线磁圆二色性(XMCD)则说明了自旋 - 轨道耦合是如何受到影响的。结合光谱学并在计算的支持下进行分析,以确定4s混合的影响。这些结果为包括量子信息处理以及磁体中稀土元素的可持续替代等未来应用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c702/10866348/8bdf038d655f/d3sc06308a-f1.jpg

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